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牛精子-输卵管相互作用的特征是特定的精子行为、超微结构和管腔反应,这些反应受到性别分选的影响。

Bovine sperm-oviduct interactions are characterized by specific sperm behaviour, ultrastructure and tubal reactions which are impacted by sex sorting.

机构信息

School of Medicine, Health Sciences Centre, University College Dublin (UCD), Dublin, Ireland.

School of Veterinary Medicine, Institute of Veterinary Anatomy, Histology and Embryology, LMU, Munich, Germany.

出版信息

Sci Rep. 2020 Oct 5;10(1):16522. doi: 10.1038/s41598-020-73592-1.

Abstract

To date sperm-oviduct interactions have largely been investigated under in vitro conditions. Therefore we set out to characterize the behaviour of bovine spermatozoa within the sperm reservoir under near in vivo conditions and in real-time using a novel live cell imaging technology and a newly established fluorescent sperm binding assay. Sperm structure and tubal reactions after sperm binding were analysed using scanning and transmission electron microscopy and histochemistry. As a model to specify the impact of stress on sperm-oviduct interactions, frozen-thawed conventional and sex-sorted spermatozoa from the same bulls (n = 7) were co-incubated with oviducts obtained from cows immediately after slaughter. Our studies revealed that within the oviductal sperm reservoir agile (bound at a tangential angle of about 30°, actively beating undulating tail), lagging (bound at a lower angle, reduced tail movement), immotile (absence of tail movement) and hyperactivated (whip-like movement of tail) spermatozoa occur, the prevalence of which changes in a time-dependent pattern. After formation of the sperm reservoir, tubal ciliary beat frequency is significantly increased (p = 0.022) and the epithelial cells show increased activity of endoplasmic reticula. After sex sorting, spermatozoa occasionally display abnormal movement patterns characterized by a 360° rotating head and tail. Sperm binding in the oviduct is significantly reduced (p = 0.008) following sexing. Sex-sorted spermatozoa reveal deformations in the head, sharp bends in the tail and a significantly increased prevalence of damaged mitochondria (p < 0.001). Our results imply that the oviductal cells specifically react to the binding of spermatozoa, maintaining sperm survival within the tubal reservoir. The sex-sorting process, which is associated with mechanical, chemical and time stress, impacts sperm binding to the oviduct and mitochondrial integrity affecting sperm motility and function.

摘要

迄今为止,精子-输卵管相互作用主要在体外条件下进行研究。因此,我们着手在接近体内条件下并使用新型活细胞成像技术和新建立的荧光精子结合测定法实时描述牛精子在精子库中的行为。使用扫描和透射电子显微镜以及组织化学分析精子结合后的精子结构和输卵管反应。作为指定应激对精子-输卵管相互作用的影响的模型,来自同一公牛的冷冻-解冻常规和性别分选精子(n = 7)与立即从屠宰牛中获得的输卵管一起共孵育。我们的研究表明,在输卵管精子库中存在活跃的(以约 30°的切线角度结合,活跃地拍打波动的尾巴)、滞后的(以较低角度结合,尾巴运动减少)、不动的(无尾巴运动)和超激活的(尾巴像鞭子一样的运动)精子,其流行率呈时间依赖性变化。形成精子库后,输卵管纤毛拍打频率显著增加(p = 0.022),上皮细胞内质网活性增加。性别分选后,精子偶尔会出现异常运动模式,其特征是头部 360°旋转和尾部旋转。输卵管中的精子结合在性别分选后显著减少(p = 0.008)。分选后的精子显示头部变形、尾部急剧弯曲以及受损线粒体的比例显著增加(p < 0.001)。我们的结果表明,输卵管细胞特异性地对精子的结合作出反应,在输卵管库中维持精子的存活。与机械、化学和时间应激相关的性别分选过程会影响精子与输卵管的结合以及线粒体完整性,从而影响精子的运动和功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9e2/7536416/729aab24bbed/41598_2020_73592_Fig1_HTML.jpg

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